The first ontogenetic model for non-crocodylomorph loricatans, based on osteohistology of the ontogenetic series of Prestosuchus chiniquensis from the Middle Triassic of Brazil.

4区 医学 Q2 Agricultural and Biological Sciences
Anatomical Record Pub Date : 2025-02-01 Epub Date: 2024-11-20 DOI:10.1002/ar.25598
Brodsky Dantas Macedo de Farias, Thiago Carlisbino, Bianca Martins Mastrantonio, Julia Brenda Desojo, Cesar Leandro Schultz, Marina Bento Soares
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引用次数: 0

Abstract

Prestosuchus chiniquensis is an iconic non-crocodylomorph loricatan from the Brazilian Triassic beds and the best-known taxon, represented by several specimens. The completeness and preservation of its skeleton make it a valuable taxon for paleobiological studies. We explore the microstructure of bone tissues of appendicular elements and ribs of three specimens of Prestosuchus to access a variety of aspects of its paleobiology, such as histovariability, ontogeny, and growth patterns. Integrating our data and other osteohistologically studied P. chiniquensis specimens, we proposed for the first time an ontogenetic model for non-crocodylomorph loricatans. The model encompasses six distinct age classes (I-VI) that allow us to infer the growth patterns of P. chiniquensis and possibly expand to other phylogenetically close taxa. During early ontogeny (age classes I-II), sustained fast growth was maintained by a fibrolamellar complex. In mid ontogeny (age classes III-IV), highly vascularized parallel-fibered bone predominates, suggesting intermediary growth rates. A change for a poorly vascularized parallel-fibered/lamellar bone would mark the attainment of sexual (age classes IV-V) and skeletal maturity, comprising the age class VI. An external fundamental system (EFS) present in the outermost cortex is the main histological feature that characterize the age class VI. Major histovariability features are present between appendicular bones and ribs of skeletally immature individuals. The most prominent of them is the presence of fibrolamellar complex and highly vascularized parallel-fibered bone in appendicular bones and poorly vascularized parallel-fibered bone in ribs. In advanced ontogenetic stages, the histovariability between appendicular bones and ribs tends to be minor. Our data also support previous hypothesis of the presence of one new taxon among the specimens assigned to P. chiniquensis, increasing the diversity of non-crocodylomorph loricatans. The new taxon, represented by the specimen UFRGS-PV-0152-T, awaits a formal anatomical description. Our study advances the preliminary understand of the ontogeny and growth patterns of non-crocodylomorphs loricatans and Pseudosuchia as a whole.

基于巴西中三叠世 Prestosuchus chiniquensis 本体系列的骨组织学,首次建立了非鳄形鼻蜥类的本体模型。
Prestosuchus chiniquensis是巴西三叠纪地层中一种标志性的非鳄形长颈龙,也是最著名的类群,有多个标本。其骨骼的完整性和保存性使其成为古生物学研究的宝贵类群。我们探讨了三件雷石龙标本的附肢和肋骨骨组织的显微结构,以了解其古生物学的各个方面,如组织变异性、本体和生长模式。综合我们的数据和其他骨组织学研究的奇尼库斯龙(P. chiniquensis)标本,我们首次提出了非鳄形鼻蜥的个体发育模型。该模型包括六个不同的年龄段(I-VI),使我们能够推断出 P. chiniquensis 的生长模式,并有可能扩展到其他系统发育相近的类群。在本体发育早期(I-II龄级),持续的快速生长是由纤维绒毛复合体维持的。在本体中期(III-IV类年龄),高血管化的平行纤维骨占主导地位,表明生长速度处于中间水平。在达到性成熟(IV-V 年龄段)和骨骼成熟(VI 年龄段)时,血管化程度较低的平行纤维/扁平层骨骼将发生变化。存在于最外层皮质的外部基本系统(EFS)是第六年龄段的主要组织学特征。骨骼未成熟个体的附骨和肋骨之间存在主要的组织变异特征。其中最突出的是,在阑尾骨中存在纤维细胞复合体和高血管化的平行纤维骨,而在肋骨中则存在低血管化的平行纤维骨。在高级个体发育阶段,阑尾骨和肋骨之间的组织变异性往往很小。我们的数据还支持之前的假设,即在归属于 P. chiniquensis 的标本中存在一个新类群,从而增加了非鳄形鼻蜥的多样性。以 UFRGS-PV-0152-T 标本为代表的新类群正在等待正式的解剖描述。我们的研究推动了对非鳄形鼻蜥和伪蜥的本体和生长模式的初步了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Anatomical Record
Anatomical Record Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
4.30
自引率
0.00%
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0
期刊介绍: The Anatomical Record
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